Package: alignprimer Version: 1.0-1 Architecture: amd64 Maintainer: Gerald Weber Installed-Size: 376 Depends: libboost-filesystem1.67.0, libboost-regex1.67.0 (>= 1.67.0-10), libboost-system1.67.0, libc6 (>= 2.14), libgcc1 (>= 1:3.0), libstdc++6 (>= 5.2), zlib1g (>= 1:1.1.4) Filename: amd64/alignprimer_1.0-1_amd64.deb Size: 119772 MD5sum: bb0e1a86d2031be6acda2b50c3831f8f SHA1: d40d53ba04a54cab96eb4d99bde1dbb28bbfb355 SHA256: d1bb2213e1db287b626ee03587dd34be17649b1962b5d8a25d360ec7793ca433 Section: Physics Priority: extra Homepage: Description: Dynamic programming alignment of PCR primers to genomes Package: alignprimer Version: 1.0-1 Architecture: i386 Maintainer: Gerald Weber Installed-Size: 375 Depends: libboost-filesystem1.67.0, libboost-regex1.67.0 (>= 1.67.0-10), libboost-system1.67.0, libc6 (>= 2.1.3), libgcc1 (>= 1:3.0), libstdc++6 (>= 5.2), zlib1g (>= 1:1.1.4) Filename: i386/alignprimer_1.0-1_i386.deb Size: 125712 MD5sum: f3b907905d56be6a23283bc656c4d1e3 SHA1: c437b0eca1799137f148b90adf518fba6598071b SHA256: 1777d7a0cbf381f2abceca13dc72ebc81befbca4db2b13bb023d5addf8ab2846 Section: Physics Priority: extra Homepage: Description: Dynamic programming alignment of PCR primers to genomes Package: alignprimer-dbgsym Source: alignprimer Version: 1.0-1 Auto-Built-Package: debug-symbols Architecture: amd64 Maintainer: Gerald Weber Installed-Size: 2308 Depends: alignprimer (= 1.0-1) Filename: amd64/alignprimer-dbgsym_1.0-1_amd64.deb Size: 2254660 MD5sum: 436d1af701b4102ddf9c8c7cacbd0514 SHA1: 5dc9cbca046e521e81ed8d6ebc0b28e423feea72 SHA256: 9dd201545f4f61a5950d878fffe4c137598eeae71126d5ac08a7cbd9117031c6 Section: debug Priority: optional Description: debug symbols for alignprimer Build-Ids: 2a5c0ff6cf7d78a90d4c5966f87567cdf570f1f4 Package: alignprimer-dbgsym Source: alignprimer Version: 1.0-1 Auto-Built-Package: debug-symbols Architecture: i386 Maintainer: Gerald Weber Installed-Size: 2165 Depends: alignprimer (= 1.0-1) Filename: i386/alignprimer-dbgsym_1.0-1_i386.deb Size: 2123456 MD5sum: db1323ef8be2d1d73d9c90f3e4d9abe7 SHA1: b31b031f294f883bc086d0f99465f7fd4e7d3d32 SHA256: 9fcee0529307eee444ff286dedc348dbd55e938eb62debf697d8981d051f81d2 Section: debug Priority: optional Description: debug symbols for alignprimer Build-Ids: dd110b9fcf8d1fb6e0e8eddefe358e1127f67fc8 Package: tfreg Version: 7.1-1 Architecture: amd64 Maintainer: Gerald Weber Installed-Size: 20061 Depends: libboost-filesystem1.67.0, libboost-iostreams1.67.0, libboost-regex1.67.0 (>= 1.67.0-10), libboost-system1.67.0, libc6 (>= 2.14), libgcc1 (>= 1:3.0), libgsl23 (>= 2.5), libgslcblas0 (>= 2.4), liblapack3 | liblapack.so.3, libstdc++6 (>= 5.2), zlib1g (>= 1:1.1.4) Filename: amd64/tfreg_7.1-1_amd64.deb Size: 6699320 MD5sum: a7b32e4d03a49871324e0c5cbd30d7eb SHA1: e060598b3d7fa55a6b5c759f5d7d2a19f85cb76a SHA256: 6bc6ac337e5ffc1b4b890e5f0a3f0b0ad191c88161d8021074fbddcb05b149ed Section: Physics Priority: extra Homepage: Description: TfReg implements the calculation of Peyrard-Bishop style Hamiltonians to obtain some physical properties of DNA and RNA duplexes. The method uses the transfer matrix technique for the calculation of the classical partition function. Also, TfReg calculates the regression of experimental versus predicted melting temperatures using the equivalent melting index. Package: tfreg Version: 7.1-1 Architecture: i386 Maintainer: Gerald Weber Installed-Size: 20116 Depends: libboost-filesystem1.67.0, libboost-iostreams1.67.0, libboost-regex1.67.0 (>= 1.67.0-10), libboost-system1.67.0, libc6 (>= 2.1.3), libgcc1 (>= 1:3.0), libgsl23 (>= 2.5), libgslcblas0 (>= 2.4), liblapack3 | liblapack.so.3, libstdc++6 (>= 5.2), zlib1g (>= 1:1.1.4) Filename: i386/tfreg_7.1-1_i386.deb Size: 6726828 MD5sum: 0759e4b1f90ef696392f429399e51fce SHA1: ac90abe2ed1d4bd63e0c2727222a22c1c2953213 SHA256: fce3be0be43de444c8887f0d0252ff87e93db8187f9f02888a2ebb8420b38235 Section: Physics Priority: extra Homepage: Description: TfReg implements the calculation of Peyrard-Bishop style Hamiltonians to obtain some physical properties of DNA and RNA duplexes. The method uses the transfer matrix technique for the calculation of the classical partition function. Also, TfReg calculates the regression of experimental versus predicted melting temperatures using the equivalent melting index. 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